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APS -2017 Annual Fall Meeting of the APS Ohio-Region Section - Event - Time-resolved measurements of diffuse reflectance in biological, scattering media

机译:APS -2017 APS俄亥俄地区分部年度秋季会议-事件-生物,散射介质中漫反射的时间分辨测量

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Light is non-invasively used to determine properties of the biological system. These biological properties are related to the optical coefficients of scattering and absorption and they are functions of the wavelength It is possible to measure these optical properties by shining an ultra-fast laser pulse into the medium and then measuring the resulting time-resolved diffuse reflectance. Here we explore relationships between time-resolved reflectance with different optical properties experimentally and numerically. We use a supercontinuum laser which produces a broadband pulse together with a time correlated single photon counter connected to photon-counting avalanche photodiode. The laser will be spectrally filtered to get the optical properties of tissue as a function of wavelength, using time-resolved data. Monte Carlo simulations of time-resolved reflectance will be calculated for media with different optical properties. These simulations will not only help with validating experimental data, but will also help us predict, design and optimize experimental studies.
机译:光非侵入性地用于确定生物系统的特性。这些生物学特性与散射和吸收的光学系数有关,它们是波长的函数。可以通过将超快激光脉冲照射到介质中,然后测量所得的时间分辨的漫反射率来测量这些光学特性。在这里,我们通过实验和数值研究了具有不同光学特性的时间分辨反射率之间的关系。我们使用超连续谱激光器,该激光器会产生宽带脉冲以及与光子计数雪崩光电二极管相连的时间相关的单光子计数器。使用时间分辨数据,将对激光进行光谱滤波,以获取组织的光学特性,该光学特性是波长的函数。对于具有不同光学特性的介质,将计算时间分辨反射率的蒙特卡洛模拟。这些模拟不仅有助于验证实验数据,还将帮助我们预测,设计和优化实验研究。

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